US20170218962A1 - Ceiling fan - Google Patents
Ceiling fan Download PDFInfo
- Publication number
- US20170218962A1 US20170218962A1 US15/514,898 US201515514898A US2017218962A1 US 20170218962 A1 US20170218962 A1 US 20170218962A1 US 201515514898 A US201515514898 A US 201515514898A US 2017218962 A1 US2017218962 A1 US 2017218962A1
- Authority
- US
- United States
- Prior art keywords
- blade
- preventing member
- fall preventing
- loop
- support portion
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 230000008878 coupling Effects 0.000 claims description 15
- 238000010168 coupling process Methods 0.000 claims description 15
- 238000005859 coupling reaction Methods 0.000 claims description 15
- 230000005489 elastic deformation Effects 0.000 claims description 4
- 230000000149 penetrating effect Effects 0.000 claims description 3
- 238000005452 bending Methods 0.000 description 3
- 230000002708 enhancing effect Effects 0.000 description 3
- 230000002093 peripheral effect Effects 0.000 description 3
- 239000002184 metal Substances 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 239000000725 suspension Substances 0.000 description 2
- 230000015572 biosynthetic process Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D25/00—Pumping installations or systems
- F04D25/02—Units comprising pumps and their driving means
- F04D25/08—Units comprising pumps and their driving means the working fluid being air, e.g. for ventilation
- F04D25/088—Ceiling fans
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/26—Rotors specially for elastic fluids
- F04D29/32—Rotors specially for elastic fluids for axial flow pumps
- F04D29/325—Rotors specially for elastic fluids for axial flow pumps for axial flow fans
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/26—Rotors specially for elastic fluids
- F04D29/32—Rotors specially for elastic fluids for axial flow pumps
- F04D29/34—Blade mountings
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/26—Rotors specially for elastic fluids
- F04D29/32—Rotors specially for elastic fluids for axial flow pumps
- F04D29/321—Rotors specially for elastic fluids for axial flow pumps for axial flow compressors
- F04D29/322—Blade mountings
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/26—Rotors specially for elastic fluids
- F04D29/32—Rotors specially for elastic fluids for axial flow pumps
- F04D29/325—Rotors specially for elastic fluids for axial flow pumps for axial flow fans
- F04D29/329—Details of the hub
Definitions
- the present invention relates to a ceiling fan.
- the conventional ceiling fan includes a coupling portion having an upper part supported on a ceiling, a rotary driving portion attached to a lower part of the coupling portion, a plurality of blades to be rotated by the rotary driving portion, and a support portion to which root portions of the blades are attached in a mounting state.
- the rotary driving portion has a stator fixed to the coupling portion and a rotor to be rotary driven around the stator.
- the support portion is fixed to the rotor. When the rotor is rotary driven, the respective blades attached to the support portion are rotated together with the support portion.
- the conventional ceiling fan having the structure is devised in respect of safety, for example, a blade fall preventing portion is provided so as not to separate the blades from the support portion even if the blade is broken in the root portion (see Patent Document 1, for example).
- FIG. 15 showing an attachment state to a support portion 112 in a root portion 111 of a blade 110 .
- the root portion 111 of the blade 110 has a screw fastening holes 113 (two places) provided in the vicinity of both ends in a width direction and an engaging hole 114 (one place) provided on a center in the width direction.
- an engaging portion 115 protruded from an upper surface is provided on the support portion 112 .
- the root portion 111 of the blade 110 is fastened with a screw by using the fastening holes 113 in the two places in a mounting state on the upper surface of the support portion 112 . Consequently, the blade 110 is brought into an attachment state to the support portion 112 . In the attachment state, furthermore, the engaging portion 115 of the support portion 112 penetrates the engaging hole 114 of the root portion 111 on the blade 110 .
- the engaging portion 115 is engaged with the engaging hole 114 so that the blade 110 can be prevented from falling.
- the blade fall preventing portion is configured from the engaging portion 115 and the engaging hole 114 .
- Patent Document 1 WO2013/145656
- a ceiling fan includes a coupling portion having an upper part supported on a ceiling; a rotary driving portion having a stator fixed to a lower part of the coupling portion and a rotor to be rotary driven around the stator; a plurality of blades to be rotated around a center of the rotor by the rotary driving portion; a support portion which is fixed to the rotor and to which root portions of the blades are attached in a mounting state; and a fall preventing member having a loop portion formed by a wire rod so as to be engageable with the blades and the support portion, and, in the ceiling fan, a through hole that the loop portion of the fall preventing member penetrates is provided in the root portions of the blades, the support portion is provided with an engaging portion which is engageable with the loop portion of the fall preventing member, and the loop portion of the fall preventing member is disposed to be engageable with the engaging portion of the support portion in a state that the blades are
- a ceiling fan capable of causing a user to clearly recognize breakage at an operation time and a stop time if a blade is broken.
- FIG. 1 is a side view showing a ceiling fan according to a first embodiment of the present invention.
- FIG. 2 is a partial enlarged view showing the ceiling fan according to the first embodiment.
- FIG. 3 is a partial enlarged view showing an attachment part of a blade to a support portion which are provided in the ceiling fan according to the first embodiment.
- FIG. 4 is a perspective view showing a fall preventing member provided in the ceiling fan according to the first embodiment.
- FIG. 5 is a view showing a state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the first embodiment.
- FIG. 6 is a side view showing the state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the first embodiment (at an operation time).
- FIG. 7 is a side view showing the state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the first embodiment (at a stop time).
- FIG. 8 is a partial enlarged view showing an attachment part of a blade to a support portion in a ceiling fan according to a second embodiment of the present invention.
- FIG. 9 is a view showing an external appearance of a fall preventing member provided in the ceiling fan according to the second embodiment.
- FIG. 10 is a view showing a state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the second embodiment.
- FIG. 11 is a partial enlarged view showing an attachment part of a blade to a support portion in a ceiling fan according to a third embodiment of the present invention.
- FIG. 12 is a view showing an external appearance of a fall preventing member provided in the ceiling fan according to the third embodiment in an attached state to the blade.
- FIG. 13 is a view showing an external appearance of a fall preventing member of the ceiling fan according to the third embodiment.
- FIG. 14 is a view showing a state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the third embodiment.
- FIG. 15 is a view showing a structure of a blade fall preventing portion provided in a conventional ceiling fan.
- a ceiling fan includes a coupling portion having an upper part supported on a ceiling; a rotary driving portion having a stator fixed to a lower part of the coupling portion and a rotor to be rotary driven around the stator; a plurality of blades to be rotated around a center of the rotor by the rotary driving portion; a support portion which is fixed to the rotor and to which root portions of the blades are attached in a mounting state; and a fall preventing member having a loop portion formed by a wire rod so as to be engageable with the blades and the support portion, and, in the ceiling fan, a through hole that the loop portion of the fall preventing member penetrates is provided in the root portions of the blades, the support portion is provided with an engaging portion which is engageable with the loop portion of the fall preventing member, and the loop portion of the fall preventing member is disposed to be engageable with the engaging portion of the support portion in a state that the blades are attached to the support portion, the loop portion is engaged
- a protruded portion is formed as the engaging portion on the support portion, and the root portion of the blade is provided with an opening groove which is extended in a length direction of the blade and is opened at the inner edge of the root portion, and is slidably engaged with the protruded portion, and in a state that the blade is attached to the support portion, the protruded portion of the support portion is engaged with the opening groove of the root portion of the blade, and the loop portion of the fall preventing member is disposed around the protruded portion.
- the blade is attached to the support portion by a fastening member through a fastening hole provided on the root portion of the blade, and the fastening hole is provided separately from a through hole that the loop portion of the fall preventing member penetrates.
- the through hole of the root portion of the blade is disposed in a shifted position from a center in a width direction of the blade.
- the through hole of the root portion of the blade is a slot extended in a length direction of the blade, and the loop portion of the fall preventing member penetrates an opening portion at an outside in the length direction of the blade in the slot in a state that the blade is attached to the support portion.
- the loop portion of the fall preventing member includes a discontinuous part of a wire rod and the fall preventing member has a clip function for fixing the loop portion to the blade releasably with front and back faces of the blade interposed by elastic deformation of the loop portion in a thickness direction of the blade.
- the inner edge of the root portion of the blade is provided with a notch portion where one of ends of the wire rod of the fall preventing member is inserted and engaged.
- the blade is provided with a plurality of groove extending in the length direction of the blade on a back face of the blade, and the one of ends of the wire rod of the fall preventing member which is inserted in the notch portion of the inner edge of the root portion of the blade is disposed in the groove of the blade and engaged with the groove of the blade.
- the fall preventing member in the ceiling fan according to any of the first to eighth inventions, includes a first loop portion penetrating the through hole of the root portion of the blade and a second loop portion which is engageable with the engaging portion of the support portion, and the first loop portion and the second loop portion are formed continuously by a single wire rod.
- FIG. 1 is a side view showing a ceiling fan 1 according to a first embodiment of the present invention and FIG. 2 is a partial enlarged view showing the ceiling fan 1 .
- the ceiling fan 1 includes a suspending portion 2 fixed to a ceiling 50 and a body portion 3 supported in engagement with the suspending portion 2 .
- the body portion 3 includes a coupling portion 4 , a rotary driving portion 7 , a support portion 10 , a plurality of blades 11 , and a body cover 22 .
- the coupling portion 4 includes a joint 5 to be engaged with the suspending portion 2 and a pipe 6 fixed to a lower part of the joint 5 .
- the joint 5 is suspended in engagement with the suspending portion 2 fixed to the ceiling 50 . Consequently, the coupling portion 4 is supported on the ceiling 50 through the suspending portion 2 . It is possible to employ a structure in which the ceiling fan 1 does not include the suspending portion 2 and the coupling portion 4 is supported by direct suspension from the ceiling 50 .
- the rotary driving portion 7 is supported on the coupling portion 4 .
- the rotary driving portion 7 includes a stator 8 taking a shape of an almost circular plate which is fixed to a lower part of the pipe 6 and an almost annular rotor 9 to be rotated around the stator 8 .
- the rotary driving portion 7 is conducted so that the rotor 9 is rotated around the stator 8 .
- the support portion 10 is fixed to a peripheral edge of the rotor 9 and is rotated integrally with the rotor 9 .
- a body cover 22 is attached to cover a lower part of the rotary driving portion 7 .
- the blades 11 are removably attached to the support portion 10 .
- the support portion 10 includes a receiving portion 25 to be a flat plate member taking an annular shape, and a fixing portion 23 for supporting the receiving portion 25 from a lower side.
- a root portion of the blade 11 is placed on the receiving portion 25 , and the respective blades 11 are removably fixed to the receiving portion 25 and the fixing portion 23 with a screw to be a fastening member as will be described below.
- FIG. 3 is a partial enlarged view showing an attachment part of the blade 11 to the support portion 10 in the ceiling fan 1 .
- the blade 11 includes a root portion 12 mounted (placed) on the receiving portion 25 of the support portion 10 , a vane portion 13 to be a part positioned on an outside in a radial direction from the root portion 12 and serving to substantially send air, and a step portion 14 positioned between the root portion 12 and the vane portion 13 .
- the blade portion 11 is formed as a metal plate integrally with the root portion 12 , the vane portion 13 , and the step portion 14 , for example.
- a step height in a width direction of the blade 11 is set to the step portion 14 in such a manner that the vane portion 13 is disposed with inclination at a suitable angle for blast with respect to the root portion 12 provided in an almost horizontal state.
- the vane portion 13 is disposed with inclination with respect to a rotating direction in such a manner that an edge on a rear side in the rotating direction of the blade 11 is lower than an edge on a forward side in the width direction.
- a plurality of ridges and grooves (convex portions and concave portions) extended in a longitudinal direction is provided on the blade 11 .
- two fastening holes 24 are provided in the vicinity of both ends in the width direction in the root portion 12 of the blade 11 .
- a plurality of holes 26 is provided on the receiving portion 25 of the support portion 10 .
- a fastening member such as a screw is inserted into the fastening holes 24 of the root portion 12 of the blade 11 and the holes 26 of the receiving portion 25 to carry out fastening to the fixing portion 23 . Consequently, the root portion 12 of the blade 11 is attached to the support portion 10 in a mounting state.
- an opening groove 31 is provided on a central part in the width direction in the root portion 12 of the blade 11 .
- the opening groove 31 is extended in a length direction of the blade 11 and is opened on an inner edge 12 a of the root portion 12 .
- the opening groove 31 includes a first hole 31 a to be an almost square hole which is opened on the inner edge 12 a of the root portion 12 and a second hole 31 b to be an almost square hole communicating with the first hole 31 a and having a greater opening width than the first hole 31 a .
- the first hole 31 a is positioned on the inner edge 12 a side of the root portion 12 from the second hole 31 b.
- a protruded portion 32 a protruded upward is provided in the vicinity of an outer peripheral edge 25 a of the receiving portion 25 of the support portion 10 (an outer edge of the support portion 10 ).
- the protruded portion 32 is a plate-shaped protruded portion taking a T shape seen from the length direction (a radial direction) of the blade 11 .
- the protruded portion 32 includes a first flat plate portion 32 a taking a shape of an almost square plate fixed to the receiving portion 25 and a second flat plate portion 32 b taking a shape of an almost square plate fixed to an upper part of the first flat plate portion 32 a and having a greater width than the first flat plate portion 32 a in the width direction of the blade 11 .
- a width of the second flat plate portion 32 b of the protruded portion 32 is smaller than an opening width of the second hole 31 b of the opening groove 31 and is greater than an opening width of the first hole 31 a .
- a width of the first flat plate portion 32 a of the protruded portion 32 is smaller than the opening width of the first hole 31 a of the opening groove 31 .
- the root portion 12 of the blade 11 is mounted on the receiving portion 25 of the support portion 10 so that the protruded portion 32 is inserted into the second hole 31 b of the opening groove 31 . Then, the blade 11 is moved by a predetermined amount outward in the radial direction so that the first flat plate portion 32 a of the protruded portion 32 is slid into the first hole 31 a of the opening groove 31 . As a result, the second flat plate portion 32 b of the protruded portion 32 and the first hole 31 a of the opening groove 31 are brought into an engaging state in at least width and thickness directions of the blade 11 as shown in FIG. 3 . In this state, the two fastening holes 24 of the root portion 12 of the blade 11 are positioned on the two holes 26 of the receiving portion 25 so that a fastening member (not shown) such as a screw can be inserted therein.
- a fastening member not shown
- a through hole 33 is provided on the root portion 12 of the blade 11 separately from the two fastening holes 24 and the opening groove 31 .
- the through hole 33 is formed between one of the fastening holes 24 and the opening groove 31 and is formed as a slot extended in the length direction of the blade 11 , and furthermore, is disposed in a position shifted from a center in the width direction of the blade 11 .
- the fall preventing member 34 penetrates the through hole 33 , and a loop portion of the fall preventing member 34 penetrates an opening part of the slot shape at an outer side in the length direction of the blade 11 .
- FIG. 4 is a perspective view showing the fall preventing member 34 .
- the fall preventing member 34 has a loop portion formed by a wire rod and a metal wire rod having rigidity is used for the wire rod, for example.
- the fall preventing member 34 has a first loop portion 35 and a second loop portion 36 , and the first loop portion 35 is formed as a larger loop portion than the second loop portion 36 .
- the first loop portion 35 is formed to be a single loop and the second loop portion 36 is formed to be a double loop.
- Each of the loop portions 35 and 36 is formed continuously by bending a single wire rod.
- the first loop portion 35 and the second loop portion 36 include discontinuous parts of the wire rod (for example, parts in which wire rods are caused to be close to each other so that a loop shape is substantially obtained) respectively.
- discontinuous parts of the wire rod for example, parts in which wire rods are caused to be close to each other so that a loop shape is substantially obtained.
- the fall preventing member 34 having the structure is attached to the root portion 12 of the blade 11 as shown in FIG. 3 .
- the wire rod configuring the first loop portion 35 penetrates the through hole 33 of the root portion 12 of the blade 11 .
- the second loop portion 36 is disposed so as to surround the second hole 31 b of the opening groove 31 .
- one of ends of the wire rod in the fall preventing member 34 is inserted in and engaged with a notch portion 38 provided on the inner edge 12 a of the root portion 12 of the blade 11 .
- the fall preventing member 34 includes discontinuous parts of the wire rod.
- Each of the wire rods configuring the first and second loop portions 35 and 36 is elastically deformed in the thickness direction of the blade 11 to enlarge the discontinuous part and is thus caused to penetrate the through hole 33 , and furthermore, one of ends of the wire rod is inserted in the notch portion 38 . Consequently, the wire rod configuring the fall preventing member 34 can be releasably fixed to the blade 11 with front and back faces of the blade 11 interposed. In other words, the fall preventing member 34 has a clip function for interposing and fixing the front and back faces of the blade 11 while performing the elastic deformation.
- the rotor 9 is rotated.
- the blade 11 fixed to the support portion 10 is rotated around a center of the rotor 9 together with the support portion 10 by the rotation.
- the vane portion 13 is gradually inclined obliquely and downward from a forward side toward a rear side in a rotating direction by the step portion 14 . Therefore, air flowing along a lower surface of the vane portion 13 is sent from the ceiling 50 side in a floor direction (downward).
- the respective blades 11 are rotary driven at a rotating speed of approximately 200 to 300 rotations/minute, for example.
- the root portion 12 of the blade 11 tries to be separated by centrifugal force in an outer direction (outward in a radial direction) from the receiving portion 25 of the support portion 10 .
- the opening groove 31 engaged with the protruded portion 32 is slid with respect to the protruded portion 32 of the receiving portion 25 .
- the second loop portion 36 of the fall preventing member 34 disposed around the protruded portion 32 comes in contact with the protruded portion 32 and the sliding movement further proceeds so that the second loop portion 36 is engaged with the protruded portion 32 (is brought into a catching state).
- the blade 11 is separated from the support portion 10 outward in the radial direction so that the respective loop portions 35 and 36 of the fall preventing member 34 are deformed, and furthermore, the protruded portion 32 is separated by the opening groove 31 of the root portion 12 of the blade 11 (the opening groove 31 and the protruded portion 32 are disengaged from each other).
- the blade 11 is further separated by the centrifugal force and the inner edge 12 a of the root portion 12 of the blade 11 is positioned on an outside in the radial direction from the outer edge 25 a of the support portion 10 (see FIG. 5 ).
- the centrifugal force of the blade 11 or the like is applied to the fall preventing member 34 to cause large deformation.
- the fall preventing member 34 penetrates the through hole 33 in the first loop portion 35 and the second loop portion 36 is engaged with the protruded portion 32 . Consequently, the blade 11 is held in the support portion 10 through the loop portions 35 and 36 of the fall preventing member 34 so that the fall of the blade 11 can be prevented.
- the blade 11 in the holding state on the support portion 10 through the fall preventing member 34 tries to hold a posture in a horizontal state by the centrifugal force generated by the rotation as shown in FIG. 6 .
- the inner edge 12 a of the root portion 12 of the blade 11 is positioned on the outside of the outer edge 25 a of the support portion 10 .
- the rotating posture of the blade 11 is brought into an unstable state.
- a forward side end in the rotating direction of the blade 11 is inclined to be lowered greatly from a rear side end so that high resistance is applied to the vane portion 13 of the rotated blade 11 and the behavior of the blade 11 is brought into an unstable state. Therefore, even if the operation of the ceiling fan 1 is continuously carried out, a user can clearly recognize the unstable behavior of the blade 11 and can grasp that breakage or the like is caused on the blade 11 .
- the through hole 33 through which the wire rod of the fall preventing member 34 penetrates is provided in the position shifted from the center in the width direction of the root portion 12 of the blade 11 . Consequently, it is possible to reliably cause an inclination posture to be taken in the blade 11 held by the fall preventing member 34 .
- the through hole 33 is caused to take a shape of a slot extended in a length direction of the blade 11 . Consequently, it is possible to hold the blade 11 by the fall preventing member 34 by ensuring such a separation distance (stroke) as to enable the inner edge 12 a of the blade 11 to be positioned on the outside of the outer edge 25 a of the support portion 10 .
- the opening groove 31 to be engaged with the protruded portion 32 is caused to take an opening shape in the inner edge 12 a of the root portion 12 of the blade 11 .
- the opening groove 31 is slid along the protruded portion 32 and the protruded portion 32 and the opening groove 31 are then disengaged from each other.
- the inner edge 12 a of the blade 11 can be positioned on the outer side than the outer edge 25 a of the support portion 10 .
- the fall preventing member 34 includes the loop portions 35 and 36 formed by the wire rods and has such a clip function as to be fixed with the surface and the back face of the blade 11 interposed by the elastic deformation of the wire rods. Consequently, it is possible to attach the fall preventing member 34 to the blade 11 without using another member. For example, the fall preventing member 34 is attached in a proper position for the blade 11 at the time of factory shipment. When the ceiling fan 1 is to be assembled, consequently, it is possible to carry out an assembling work without paying attention to the fall preventing member 34 . Accordingly, it is possible to prevent the attachment of the fall preventing member 34 from being forgotten.
- a ceiling fan according to a second embodiment of the present invention will be described.
- a configuration of a fall preventing member formed by a wire rod is different from that of the fall preventing member 34 according to the first embodiment.
- a difference between the configurations of the fall preventing members will be mainly described.
- the same components as those of the ceiling fan 1 according to the first embodiment have the same reference numerals and description thereof will be omitted.
- FIG. 8 is a partial enlarged view showing an attachment part of a blade 11 to a support portion 10 in a ceiling fan 51 according to the second embodiment.
- FIG. 9 is a view showing an external appearance of a fall preventing member 52 .
- a diameter of a wire rod for forming the fall preventing member 52 is increased so that a loop portion is deformed with difficulty in the ceiling fan 51 according to the second embodiment.
- the fall preventing member 52 is formed by bending a single wire rod so as to have a first loop portion 53 and a second loop portion 54 .
- the first and second loop portions 53 and 54 are formed into a single loop.
- the first loop portion 53 takes a shape of a long loop in a length direction of the blade 11 and a bent portion (curved portion) 53 a obtained by curving a wire rod is provided on an end at a radial outside of the blade 11 in a longitudinal direction thereof.
- the second loop portion 54 takes a shape of an almost triangular loop and a base portion 54 a of the almost triangular shape is disposed in a width direction of the blade 11 , and furthermore, a top portion 54 b opposed to the base portion is provided toward an inner edge 12 a side of a root portion 12 of the blade 11 .
- an opening width in the width direction of the blade 11 (a width of a loop portion surrounded by a wire rod) is gradually reduced closer to the top portion 54 b .
- the top portion 54 b of the second loop portion 54 serves as a bent portion (curved portion) 54 b obtained by curving a wire rod.
- a notch portion 55 is provided on the inner edge 12 a of the root portion 12 of the blade 11 , and one of ends of the wire rod of the fall preventing member 52 is inserted in and engaged with the notch portion 55 .
- a through hole 33 and the notch portion 55 are disposed with an opening groove 31 interposed therebetween. For this reason, in a state in which the fall preventing member 52 is attached to the blade 11 , a back face side (a lower face side) of the blade 11 and a wire rod are engaged in contact with each other in the through hole 33 and the notch portion 55 .
- the wire rod of the second loop portion 54 is provided in contact with a front face side (an upper face side) of the blade 11 around a second hole 31 b of the opening groove 31 positioned between the through hole 33 and the notch portion 55 . Consequently, it is possible to stably attach the fall preventing member 52 to the blade 11 by interposing the front and back faces of the blade 11 (that is, by utilizing a clip function) while elastically deforming the wire rod of the fall preventing member 52 .
- the wire rod of the first loop portion 53 penetrates the through hole 33 and the wire rod penetrates an opening part at a radial outside of a slot shape.
- the second loop portion 54 is disposed around a protruded portion 32 and the second hole 31 b of the opening groove 31 .
- the protruded portion 32 is positioned in the vicinity of the base portion 54 a of the almost triangular shape and a distance L1 is maintained between the top portion 54 b and the protruded portion 32 at an inside of the second loop portion 54 .
- a distance L2 is maintained as an opening length in a longitudinal direction of the through hole 33 through which the first loop portion 53 penetrates.
- the root portion 12 of the blade 11 tries to be separated by centrifugal force in an outer direction (outward in a radial direction) from the receiving portion 25 of the support portion 10 .
- the opening groove 31 engaged with the protruded portion 32 is slid with respect to the protruded portion 32 of the receiving portion 25 .
- the distance L1 is maintained between the top portion 54 b and the protruded portion 32 at the inside of the second loop portion 54 .
- the second loop portion 54 of the fall preventing member 52 will come in contact with the protruded portion 32 so that both of them are engaged with each other only after the opening groove 31 is slid by the distance L1 with respect to the protruded portion 32 .
- the second loop portion 54 takes an almost triangular shape and has a reduced opening width as gradually closer to the top portion 54 b . Therefore, the protruded portion 32 and the top portion 54 b of the second loop portion 54 are easily engaged with each other.
- the blade 11 is separated from the support portion 10 outward in the radial direction. Consequently, a bent portion 53 a of the first loop portion 53 of the fall preventing member 52 is slid relatively in the longitudinal direction of the through hole 33 taking a shape of a slot.
- the bent portion 53 a of the first loop portion 53 comes in contact with the end on the inside in the radial direction of the blade 11 in the through hole 33 .
- the inner edge 12 a of the root portion 12 of the blade 11 is positioned on an outside in the radial direction from the outer edge 25 a of the support portion 10 (see FIG. 10 ).
- a diameter of the wire rod is increased so that the loop portion is deformed with difficulty.
- the distance L1 is maintained between the top portion 54 b of the second loop portion 54 and the protruded portion 32
- the distance L2 is maintained as the opening length in the longitudinal direction of the through hole 33 through which the first loop portion 53 penetrates.
- a total distance of the distance L1 and the distance L2 serves as a stroke in which the blade 11 is moved to the outside in the radial direction.
- the stroke that is, L1+L2
- a bent portion 53 a is provided on the first loop portion 53 and the inner edge 12 a of the through hole 33 is caused to come in contact with the wire rod in the bent portion 53 a . Consequently, it is possible to suppress stress concentration on the wire rod.
- the top portion 54 b of the second loop portion 54 serves as the bent portion to come in contact with the protruded portion 32 . Consequently, it is possible to suppress the stress concentration on the wire rod.
- the ceiling fan 51 according to the second embodiment is the same as the ceiling fan 1 according to the first embodiment in that a user can clearly recognize a breakage of the blade in the event of the breakage at an operation time and a stop time.
- the fall preventing member 52 according to the second embodiment it is possible to reliably hold the blade 11 with use of the fall preventing member 52 having higher rigidity in the event of the breakage of the blade 11 .
- a ceiling fan according to a third embodiment of the present invention will be described.
- a configuration of a fall preventing member formed by a wire rod is different from that of the fall preventing members 34 , 52 according to the first and second embodiments.
- a difference between the configurations of the fall preventing members will be mainly described.
- the same components as those of the ceiling fans 1 , 51 according to the first and second embodiments have the same reference numerals and description thereof will be omitted.
- FIG. 11 is a partial enlarged view showing an attachment part of a blade 11 to the support portion 10 in a ceiling fan 61 according to the third embodiment.
- FIG. 12 is a view showing an external appearance of a fall preventing member 62 in an attached state to the blade 11
- FIG. 13 is a view showing an external appearance of the fall preventing member 62 .
- a diameter of a wire rod for forming the fall preventing member 62 is increased so that a loop portion is deformed with difficulty in the ceiling fan 61 according to the third embodiment in the same manner as the fall preventing member 52 of the second embodiment.
- the fall preventing member 62 is formed by bending a single wire rod so as to have a first loop portion 63 and a second loop portion 64 .
- the first and second loop portions 63 and 64 are formed into a single loop.
- the second loop portion 64 has the same configuration as the second loop portion 54 of the fall preventing member 52 of the second embodiment.
- the first loop portion 63 takes a shape of a long loop in a length direction of the blade 11 and a bent portion (curved portion) 63 a obtained by curving a wire rod is provided on an end at a radial outside of the blade 11 in a longitudinal direction thereof.
- a bent portion 63 b is provided on an inside end in the radial direction of the blade 11 in the loop shape of the first loop portion 63 .
- the bent portion 63 b is obtained by curving the wire rod toward a direction approximately intersecting with the radial direction (for example, the wide direction of the blade).
- the wire rod is extending from the bent portion 63 b to a position across the second loop portion 64 in the wide direction of the blade 11 , and at the position, a bent portion 63 c obtained by curving the wire rod toward the outside end in the radial direction of the blade 11 .
- the end of the wire rod toward the outside end in the radial direction of the blade 11 from the bent portion 63 c is an engaging portion 63 d engaging the wire rod with the blade 11 .
- the engaging portion 63 d which is one of ends of the wire rod of the fall preventing member 62 is inserted in and engaged with the notch portion 55 provided on the inner edge 12 a of the root portion 12 of the blade 11 .
- the engaging portion 63 d is inserted in the notch portion 55 by inserting while elastically deforming the engaging portion 63 d which is a linear part of the wire rod so as to bring the engaging portion 63 d close to the second loop portion 64 in the wide direction of the blade 11 .
- the blade 11 is provided with a plurality of groove 11 a (convex portions in the upper view and concave portions in the lower view) extending in the length direction of the blade 11 on a back face of the blade 11 .
- the notch portion 55 is formed along the groove 11 a extended in the longitudinal direction of the blade 11 . Therefore, the engaging portion 63 d is inserted in the notch portion 55 from the front face side to the back face side of the blade 11 so that the engaging portion 63 d is disposed in the groove 11 a and engaged with an inner surface of the groove 11 a.
- the through hole 33 having the slot shape is formed along another groove 11 a extended in the longitudinal direction of the blade 11 . Therefore, the liner part of the wire rod (between the bent portions 63 a and 63 b ) inserted in the through hole 33 is disposed in the groove 11 a and engaged with an inner surface of the groove 11 a.
- the engaging portion engaging with the blade 11 in the fall preventing member 62 is disposed in and along the groove 11 a formed in the blade 11 thereby enhancing the clip function by utilizing the elasticity of the blade 11 .
- a seal tape 65 is attached on the front face of the blade 11 so as to extend in the wide direction of the blade 11 .
- One end of the seal tape 65 is attached to the wire rod of the second loop portion 64 of the fall preventing member 62 . Thereby, it is possible to prevent positional shift of the fall preventing member 62 in the longitudinal direction of the blade 11 .
- the seal tape 65 is attached along the front face having a plurality of convex and concave portions of the grooves 11 a , thereby it is possible to prevent peeling off the seal tape 65 .
- the ceiling fan 61 according to the third embodiment is the same as the ceiling fan 51 according to the second embodiment in that the ceiling fan 61 has a function and operation for preventing fall of the blade 11 by the fall preventing member 62 in the case in which the attachment part of the blade 11 to the support portion 10 is broken, for example, the root portion 12 of the blade 11 is broken in the ceiling fan 61 (refer to FIG. 14 ). Accordingly, a user can clearly recognize a breakage of the blade in the event of the breakage at an operation time and a stop time.
- the fall preventing member 62 according to the third embodiment it is possible to attach the fall preventing member 62 to the blade 11 with enhancing a positional accuracy thereof. Furthermore, it is possible to enhance a clip function of the fall preventing member 62 thereby making it easy to attach the fall preventing member 62 to the blade 11 .
- the configuration of the protruded portion 32 is not restricted to only this case.
- the support portion 10 it is preferable to provide an engaging portion with which the second loop portion 36 can be engaged. It is possible to employ various structures other than the protruded portion 32 as the configuration of the engaging portion.
- the through hole 33 through which the wire rod of the fall preventing member 34 penetrates is disposed with a shift (that is, eccentricity) from the center in the width direction of the blade 11 in the root portion 12 of the blade 11 .
- the formation position of the through hole is not restricted to only this configuration.
- the fall preventing member has two loop portions, that is, the first loop portion and the second loop portion, furthermore, it is possible to employ the case in which only one loop portion is provided.
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Abstract
Description
- The present invention relates to a ceiling fan.
- Conventionally, there are known various types of ceiling fans suspended from a ceiling for use. For example, the conventional ceiling fan includes a coupling portion having an upper part supported on a ceiling, a rotary driving portion attached to a lower part of the coupling portion, a plurality of blades to be rotated by the rotary driving portion, and a support portion to which root portions of the blades are attached in a mounting state. The rotary driving portion has a stator fixed to the coupling portion and a rotor to be rotary driven around the stator. The support portion is fixed to the rotor. When the rotor is rotary driven, the respective blades attached to the support portion are rotated together with the support portion.
- The conventional ceiling fan having the structure is devised in respect of safety, for example, a blade fall preventing portion is provided so as not to separate the blades from the support portion even if the blade is broken in the root portion (see
Patent Document 1, for example). - A structure of the blade fall preventing portion provided in the conventional ceiling fan will be described with reference to
FIG. 15 showing an attachment state to asupport portion 112 in aroot portion 111 of ablade 110. As shown inFIG. 15 , theroot portion 111 of theblade 110 has a screw fastening holes 113 (two places) provided in the vicinity of both ends in a width direction and an engaging hole 114 (one place) provided on a center in the width direction. Moreover, anengaging portion 115 protruded from an upper surface is provided on thesupport portion 112. - As shown in
FIG. 15 , theroot portion 111 of theblade 110 is fastened with a screw by using thefastening holes 113 in the two places in a mounting state on the upper surface of thesupport portion 112. Consequently, theblade 110 is brought into an attachment state to thesupport portion 112. In the attachment state, furthermore, theengaging portion 115 of thesupport portion 112 penetrates theengaging hole 114 of theroot portion 111 on theblade 110. - In the case in which a vicinal part of the
fastening hole 113 is broken in theroot portion 111 of theblade 110, for example, theengaging portion 115 is engaged with theengaging hole 114 so that theblade 110 can be prevented from falling. Referring to the conventional ceiling fan inFIG. 15 , thus, the blade fall preventing portion is configured from theengaging portion 115 and theengaging hole 114. - Patent Document 1: WO2013/145656
- In the case in which the root portion of the blade is broken, however, a part of the root portion is placed on the support portion. For this reason, there is a problem in that an amount of suspension of the blade (an amount of downward inclination) is small and hard for a user to notice breakage of the blade at a stop time as well as at an operation time.
- In order to solve the conventional problem, it is an object of the present invention to provide a ceiling fan capable of causing a user to clearly recognize breakage at an operation time and a stop time if a blade is broken.
- In order to solve the conventional problem, a ceiling fan according to an aspect of the present invention includes a coupling portion having an upper part supported on a ceiling; a rotary driving portion having a stator fixed to a lower part of the coupling portion and a rotor to be rotary driven around the stator; a plurality of blades to be rotated around a center of the rotor by the rotary driving portion; a support portion which is fixed to the rotor and to which root portions of the blades are attached in a mounting state; and a fall preventing member having a loop portion formed by a wire rod so as to be engageable with the blades and the support portion, and, in the ceiling fan, a through hole that the loop portion of the fall preventing member penetrates is provided in the root portions of the blades, the support portion is provided with an engaging portion which is engageable with the loop portion of the fall preventing member, and the loop portion of the fall preventing member is disposed to be engageable with the engaging portion of the support portion in a state that the blades are attached to the support portion, the loop portion is engaged with the engaging portion of the support portion when an attachment part of the support portion and the blades is broken, and the blades are held on the support portion through the loop portion of the fall preventing member in a state that inner edges of the root portions of the blades are positioned on an outside of an outer edge of the support portion.
- According to the present invention, it is possible to provide a ceiling fan capable of causing a user to clearly recognize breakage at an operation time and a stop time if a blade is broken.
-
FIG. 1 is a side view showing a ceiling fan according to a first embodiment of the present invention. -
FIG. 2 is a partial enlarged view showing the ceiling fan according to the first embodiment. -
FIG. 3 is a partial enlarged view showing an attachment part of a blade to a support portion which are provided in the ceiling fan according to the first embodiment. -
FIG. 4 is a perspective view showing a fall preventing member provided in the ceiling fan according to the first embodiment. -
FIG. 5 is a view showing a state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the first embodiment. -
FIG. 6 is a side view showing the state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the first embodiment (at an operation time). -
FIG. 7 is a side view showing the state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the first embodiment (at a stop time). -
FIG. 8 is a partial enlarged view showing an attachment part of a blade to a support portion in a ceiling fan according to a second embodiment of the present invention. -
FIG. 9 is a view showing an external appearance of a fall preventing member provided in the ceiling fan according to the second embodiment. -
FIG. 10 is a view showing a state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the second embodiment. -
FIG. 11 is a partial enlarged view showing an attachment part of a blade to a support portion in a ceiling fan according to a third embodiment of the present invention. -
FIG. 12 is a view showing an external appearance of a fall preventing member provided in the ceiling fan according to the third embodiment in an attached state to the blade. -
FIG. 13 is a view showing an external appearance of a fall preventing member of the ceiling fan according to the third embodiment. -
FIG. 14 is a view showing a state in which the blade is held by the fall preventing member when the attachment part of the blade to the support portion is broken in the ceiling fan according to the third embodiment. -
FIG. 15 is a view showing a structure of a blade fall preventing portion provided in a conventional ceiling fan. - A ceiling fan according to a first invention includes a coupling portion having an upper part supported on a ceiling; a rotary driving portion having a stator fixed to a lower part of the coupling portion and a rotor to be rotary driven around the stator; a plurality of blades to be rotated around a center of the rotor by the rotary driving portion; a support portion which is fixed to the rotor and to which root portions of the blades are attached in a mounting state; and a fall preventing member having a loop portion formed by a wire rod so as to be engageable with the blades and the support portion, and, in the ceiling fan, a through hole that the loop portion of the fall preventing member penetrates is provided in the root portions of the blades, the support portion is provided with an engaging portion which is engageable with the loop portion of the fall preventing member, and the loop portion of the fall preventing member is disposed to be engageable with the engaging portion of the support portion in a state that the blades are attached to the support portion, the loop portion is engaged with the engaging portion of the support portion when an attachment part of the support portion and the blades is broken, and the blades are held on the support portion through the loop portion of the fall preventing member in a state that inner edges of the root portions of the blades are positioned on an outside of an outer edge of the support portion.
- According to a second invention, in the ceiling fan according to the first invention, a protruded portion is formed as the engaging portion on the support portion, and the root portion of the blade is provided with an opening groove which is extended in a length direction of the blade and is opened at the inner edge of the root portion, and is slidably engaged with the protruded portion, and in a state that the blade is attached to the support portion, the protruded portion of the support portion is engaged with the opening groove of the root portion of the blade, and the loop portion of the fall preventing member is disposed around the protruded portion.
- According to a third invention, in the ceiling fan according to the first or second invention, the blade is attached to the support portion by a fastening member through a fastening hole provided on the root portion of the blade, and the fastening hole is provided separately from a through hole that the loop portion of the fall preventing member penetrates.
- According to a fourth invention, in the ceiling fan according to any of the first to third inventions, the through hole of the root portion of the blade is disposed in a shifted position from a center in a width direction of the blade.
- According to a fifth invention, in the ceiling fan according to any of the first to fourth inventions, the through hole of the root portion of the blade is a slot extended in a length direction of the blade, and the loop portion of the fall preventing member penetrates an opening portion at an outside in the length direction of the blade in the slot in a state that the blade is attached to the support portion.
- According to a sixth invention, in the ceiling fan according to any of the first to fifth inventions, the loop portion of the fall preventing member includes a discontinuous part of a wire rod and the fall preventing member has a clip function for fixing the loop portion to the blade releasably with front and back faces of the blade interposed by elastic deformation of the loop portion in a thickness direction of the blade.
- According to a seventh invention, in the ceiling fan according to the sixth invention, the inner edge of the root portion of the blade is provided with a notch portion where one of ends of the wire rod of the fall preventing member is inserted and engaged.
- According to an eighth invention, in the ceiling fan according to the seventh invention, the blade is provided with a plurality of groove extending in the length direction of the blade on a back face of the blade, and the one of ends of the wire rod of the fall preventing member which is inserted in the notch portion of the inner edge of the root portion of the blade is disposed in the groove of the blade and engaged with the groove of the blade.
- According to a ninth invention, in the ceiling fan according to any of the first to eighth inventions, the fall preventing member includes a first loop portion penetrating the through hole of the root portion of the blade and a second loop portion which is engageable with the engaging portion of the support portion, and the first loop portion and the second loop portion are formed continuously by a single wire rod.
- Embodiments according to the present invention will be described below with reference to the drawings. The present invention is not restricted to the embodiments.
-
FIG. 1 is a side view showing aceiling fan 1 according to a first embodiment of the present invention andFIG. 2 is a partial enlarged view showing theceiling fan 1. - As shown in
FIGS. 1 and 2 , theceiling fan 1 includes a suspendingportion 2 fixed to aceiling 50 and abody portion 3 supported in engagement with the suspendingportion 2. Thebody portion 3 includes acoupling portion 4, arotary driving portion 7, asupport portion 10, a plurality ofblades 11, and abody cover 22. - The
coupling portion 4 includes ajoint 5 to be engaged with the suspendingportion 2 and apipe 6 fixed to a lower part of thejoint 5. The joint 5 is suspended in engagement with the suspendingportion 2 fixed to theceiling 50. Consequently, thecoupling portion 4 is supported on theceiling 50 through the suspendingportion 2. It is possible to employ a structure in which theceiling fan 1 does not include the suspendingportion 2 and thecoupling portion 4 is supported by direct suspension from theceiling 50. - The
rotary driving portion 7 is supported on thecoupling portion 4. Therotary driving portion 7 includes astator 8 taking a shape of an almost circular plate which is fixed to a lower part of thepipe 6 and an almostannular rotor 9 to be rotated around thestator 8. Therotary driving portion 7 is conducted so that therotor 9 is rotated around thestator 8. Thesupport portion 10 is fixed to a peripheral edge of therotor 9 and is rotated integrally with therotor 9. Abody cover 22 is attached to cover a lower part of therotary driving portion 7. - The
blades 11 are removably attached to thesupport portion 10. As shown inFIG. 2 , thesupport portion 10 includes a receivingportion 25 to be a flat plate member taking an annular shape, and a fixingportion 23 for supporting the receivingportion 25 from a lower side. A root portion of theblade 11 is placed on the receivingportion 25, and therespective blades 11 are removably fixed to the receivingportion 25 and the fixingportion 23 with a screw to be a fastening member as will be described below. -
FIG. 3 is a partial enlarged view showing an attachment part of theblade 11 to thesupport portion 10 in theceiling fan 1. As shown inFIG. 3 , theblade 11 includes aroot portion 12 mounted (placed) on the receivingportion 25 of thesupport portion 10, avane portion 13 to be a part positioned on an outside in a radial direction from theroot portion 12 and serving to substantially send air, and astep portion 14 positioned between theroot portion 12 and thevane portion 13. Theblade portion 11 is formed as a metal plate integrally with theroot portion 12, thevane portion 13, and thestep portion 14, for example. A step height in a width direction of theblade 11 is set to thestep portion 14 in such a manner that thevane portion 13 is disposed with inclination at a suitable angle for blast with respect to theroot portion 12 provided in an almost horizontal state. Specifically, thevane portion 13 is disposed with inclination with respect to a rotating direction in such a manner that an edge on a rear side in the rotating direction of theblade 11 is lower than an edge on a forward side in the width direction. In order to increase rigidity, moreover, a plurality of ridges and grooves (convex portions and concave portions) extended in a longitudinal direction is provided on theblade 11. - As shown in
FIG. 3 , twofastening holes 24 are provided in the vicinity of both ends in the width direction in theroot portion 12 of theblade 11. A plurality ofholes 26 is provided on the receivingportion 25 of thesupport portion 10. A fastening member (not shown) such as a screw is inserted into the fastening holes 24 of theroot portion 12 of theblade 11 and theholes 26 of the receivingportion 25 to carry out fastening to the fixingportion 23. Consequently, theroot portion 12 of theblade 11 is attached to thesupport portion 10 in a mounting state. - Next, description will be given to a structure for preventing fall of the
blade 11 in the case in which the attachment part (theroot portion 12 or the like) of theblade 11 in theceiling fan 1 is broken. - As shown in
FIG. 3 , an openinggroove 31 is provided on a central part in the width direction in theroot portion 12 of theblade 11. The openinggroove 31 is extended in a length direction of theblade 11 and is opened on aninner edge 12 a of theroot portion 12. The openinggroove 31 includes afirst hole 31 a to be an almost square hole which is opened on theinner edge 12 a of theroot portion 12 and asecond hole 31 b to be an almost square hole communicating with thefirst hole 31 a and having a greater opening width than thefirst hole 31 a. Thefirst hole 31 a is positioned on theinner edge 12 a side of theroot portion 12 from thesecond hole 31 b. - A protruded
portion 32 a protruded upward is provided in the vicinity of an outerperipheral edge 25 a of the receivingportion 25 of the support portion 10 (an outer edge of the support portion 10). The protrudedportion 32 is a plate-shaped protruded portion taking a T shape seen from the length direction (a radial direction) of theblade 11. The protrudedportion 32 includes a firstflat plate portion 32 a taking a shape of an almost square plate fixed to the receivingportion 25 and a secondflat plate portion 32 b taking a shape of an almost square plate fixed to an upper part of the firstflat plate portion 32 a and having a greater width than the firstflat plate portion 32 a in the width direction of theblade 11. - Description will be given to the relationship between the opening
groove 31 provided on theroot portion 12 of theblade 11 and the protrudedportion 32 provided on the receivingportion 25. A width of the secondflat plate portion 32 b of the protrudedportion 32 is smaller than an opening width of thesecond hole 31 b of the openinggroove 31 and is greater than an opening width of thefirst hole 31 a. A width of the firstflat plate portion 32 a of the protrudedportion 32 is smaller than the opening width of thefirst hole 31 a of the openinggroove 31. - Consequently, the
root portion 12 of theblade 11 is mounted on the receivingportion 25 of thesupport portion 10 so that the protrudedportion 32 is inserted into thesecond hole 31 b of the openinggroove 31. Then, theblade 11 is moved by a predetermined amount outward in the radial direction so that the firstflat plate portion 32 a of the protrudedportion 32 is slid into thefirst hole 31 a of the openinggroove 31. As a result, the secondflat plate portion 32 b of the protrudedportion 32 and thefirst hole 31 a of the openinggroove 31 are brought into an engaging state in at least width and thickness directions of theblade 11 as shown inFIG. 3 . In this state, the twofastening holes 24 of theroot portion 12 of theblade 11 are positioned on the twoholes 26 of the receivingportion 25 so that a fastening member (not shown) such as a screw can be inserted therein. - As shown in
FIG. 3 , a throughhole 33 is provided on theroot portion 12 of theblade 11 separately from the twofastening holes 24 and theopening groove 31. The throughhole 33 is formed between one of the fastening holes 24 and theopening groove 31 and is formed as a slot extended in the length direction of theblade 11, and furthermore, is disposed in a position shifted from a center in the width direction of theblade 11. Thefall preventing member 34 penetrates the throughhole 33, and a loop portion of thefall preventing member 34 penetrates an opening part of the slot shape at an outer side in the length direction of theblade 11. -
FIG. 4 is a perspective view showing thefall preventing member 34. As shown inFIGS. 3 and 4 , thefall preventing member 34 has a loop portion formed by a wire rod and a metal wire rod having rigidity is used for the wire rod, for example. Thefall preventing member 34 has afirst loop portion 35 and asecond loop portion 36, and thefirst loop portion 35 is formed as a larger loop portion than thesecond loop portion 36. For example, thefirst loop portion 35 is formed to be a single loop and thesecond loop portion 36 is formed to be a double loop. Each of the 35 and 36 is formed continuously by bending a single wire rod. For this reason, theloop portions first loop portion 35 and thesecond loop portion 36 include discontinuous parts of the wire rod (for example, parts in which wire rods are caused to be close to each other so that a loop shape is substantially obtained) respectively. By applying external force to elastically deform the wire rod, for example, it is possible to enlarge the discontinuous part, thereby opening the loop portion. - The
fall preventing member 34 having the structure is attached to theroot portion 12 of theblade 11 as shown inFIG. 3 . Specifically, the wire rod configuring thefirst loop portion 35 penetrates the throughhole 33 of theroot portion 12 of theblade 11. Thesecond loop portion 36 is disposed so as to surround thesecond hole 31 b of the openinggroove 31. Furthermore, one of ends of the wire rod in thefall preventing member 34 is inserted in and engaged with anotch portion 38 provided on theinner edge 12 a of theroot portion 12 of theblade 11. As described above, thefall preventing member 34 includes discontinuous parts of the wire rod. Each of the wire rods configuring the first and 35 and 36 is elastically deformed in the thickness direction of thesecond loop portions blade 11 to enlarge the discontinuous part and is thus caused to penetrate the throughhole 33, and furthermore, one of ends of the wire rod is inserted in thenotch portion 38. Consequently, the wire rod configuring thefall preventing member 34 can be releasably fixed to theblade 11 with front and back faces of theblade 11 interposed. In other words, thefall preventing member 34 has a clip function for interposing and fixing the front and back faces of theblade 11 while performing the elastic deformation. - In a state in which the
root portion 12 of theblade 11 to which thefall preventing member 34 is fixed is mounted on the receivingportion 25 and is attached with a fastening member (not shown) such as a screw as shown inFIG. 3 , moreover, the protrudedportion 32 of the receivingportion 25 is engaged with the openinggroove 31 of theblade 11. Thesecond loop portion 36 of thefall preventing member 34 is disposed around the protrudedportion 32 in this state. - Description will be given to an operation of the
ceiling fan 1 according to the first embodiment having such a structure. In theceiling fan 1, when therotary driving portion 7 is conducted, therotor 9 is rotated. Theblade 11 fixed to thesupport portion 10 is rotated around a center of therotor 9 together with thesupport portion 10 by the rotation. In theblade 11, thevane portion 13 is gradually inclined obliquely and downward from a forward side toward a rear side in a rotating direction by thestep portion 14. Therefore, air flowing along a lower surface of thevane portion 13 is sent from theceiling 50 side in a floor direction (downward). Therespective blades 11 are rotary driven at a rotating speed of approximately 200 to 300 rotations/minute, for example. - Description will be given to a function and operation for preventing fall of the
blade 11 by thefall preventing member 34 in the case in which the attachment part of theblade 11 to thesupport portion 10 is broken, for example, theroot portion 12 of theblade 11 is broken in theceiling fan 1 according to the first embodiment. - In the case in which the attachment part of the
blade 11 and thesupport portion 10 is broken during the operation of theceiling fan 1, theroot portion 12 of theblade 11 tries to be separated by centrifugal force in an outer direction (outward in a radial direction) from the receivingportion 25 of thesupport portion 10. When theblade 11 starts movement outward in the radial direction, the openinggroove 31 engaged with the protrudedportion 32 is slid with respect to the protrudedportion 32 of the receivingportion 25. Consequently, thesecond loop portion 36 of thefall preventing member 34 disposed around the protrudedportion 32 comes in contact with the protrudedportion 32 and the sliding movement further proceeds so that thesecond loop portion 36 is engaged with the protruded portion 32 (is brought into a catching state). - In addition, the
blade 11 is separated from thesupport portion 10 outward in the radial direction so that the 35 and 36 of therespective loop portions fall preventing member 34 are deformed, and furthermore, the protrudedportion 32 is separated by the openinggroove 31 of theroot portion 12 of the blade 11 (the openinggroove 31 and the protrudedportion 32 are disengaged from each other). Theblade 11 is further separated by the centrifugal force and theinner edge 12 a of theroot portion 12 of theblade 11 is positioned on an outside in the radial direction from theouter edge 25 a of the support portion 10 (seeFIG. 5 ). On the other hand, the centrifugal force of theblade 11 or the like is applied to thefall preventing member 34 to cause large deformation. However, thefall preventing member 34 penetrates the throughhole 33 in thefirst loop portion 35 and thesecond loop portion 36 is engaged with the protrudedportion 32. Consequently, theblade 11 is held in thesupport portion 10 through the 35 and 36 of theloop portions fall preventing member 34 so that the fall of theblade 11 can be prevented. - When the operation of the
ceiling fan 1 is continuously carried out in this state, theblade 11 in the holding state on thesupport portion 10 through thefall preventing member 34 tries to hold a posture in a horizontal state by the centrifugal force generated by the rotation as shown inFIG. 6 . However, theinner edge 12 a of theroot portion 12 of theblade 11 is positioned on the outside of theouter edge 25 a of thesupport portion 10. For this reason, the rotating posture of theblade 11 is brought into an unstable state. For example, a forward side end in the rotating direction of theblade 11 is inclined to be lowered greatly from a rear side end so that high resistance is applied to thevane portion 13 of the rotatedblade 11 and the behavior of theblade 11 is brought into an unstable state. Therefore, even if the operation of theceiling fan 1 is continuously carried out, a user can clearly recognize the unstable behavior of theblade 11 and can grasp that breakage or the like is caused on theblade 11. - Moreover, the through
hole 33 through which the wire rod of thefall preventing member 34 penetrates is provided in the position shifted from the center in the width direction of theroot portion 12 of theblade 11. Consequently, it is possible to reliably cause an inclination posture to be taken in theblade 11 held by thefall preventing member 34. - In a state in which the operation of the
ceiling fan 1 is stopped, moreover, theinner edge 12 a of theroot portion 12 of theblade 11 is positioned on the outside of theouter edge 25 a of thesupport portion 10 as shown inFIG. 7 . Consequently, the edge on the outside in the radial direction of theblade 11 is suspended greatly so that an almost vertical posture can be taken. In the state in which the operation of theceiling fan 1 is stopped, therefore, a user can clearly recognize the almost vertical posture of theblade 11 and can grasps that the breakage or the like is caused on theblade 11. - Furthermore, the through
hole 33 is caused to take a shape of a slot extended in a length direction of theblade 11. Consequently, it is possible to hold theblade 11 by thefall preventing member 34 by ensuring such a separation distance (stroke) as to enable theinner edge 12 a of theblade 11 to be positioned on the outside of theouter edge 25 a of thesupport portion 10. - In a state in which the
fall preventing member 34 is attached to theblade 11, furthermore, thesecond loop portion 36 is disposed around thesecond hole 31 b of the openinggroove 31. Consequently, when theblade 11 is to be attached to thesupport portion 10, it is possible to bring a state in which thesecond loop portion 36 is disposed around the protrudedportion 32 by simply inserting the protrudedportion 32 of the receivingportion 25 into thesecond hole 31 b of the openinggroove 31 of theblade 11. By carrying out normal works for attaching theblade 11, therefore, it is possible to bring a state in which thefall preventing member 34 can be engaged with the engaging portion (the protruded portion 32) of thesupport portion 10. Thus, workability can be enhanced, and furthermore, it is possible to prevent engagement from being forgotten. - The opening
groove 31 to be engaged with the protrudedportion 32 is caused to take an opening shape in theinner edge 12 a of theroot portion 12 of theblade 11. In the case in which the breakage or the like is caused on theblade 11, consequently, the openinggroove 31 is slid along the protrudedportion 32 and the protrudedportion 32 and theopening groove 31 are then disengaged from each other. Thus, theinner edge 12 a of theblade 11 can be positioned on the outer side than theouter edge 25 a of thesupport portion 10. - Moreover, the
fall preventing member 34 includes the 35 and 36 formed by the wire rods and has such a clip function as to be fixed with the surface and the back face of theloop portions blade 11 interposed by the elastic deformation of the wire rods. Consequently, it is possible to attach thefall preventing member 34 to theblade 11 without using another member. For example, thefall preventing member 34 is attached in a proper position for theblade 11 at the time of factory shipment. When theceiling fan 1 is to be assembled, consequently, it is possible to carry out an assembling work without paying attention to thefall preventing member 34. Accordingly, it is possible to prevent the attachment of thefall preventing member 34 from being forgotten. - Next, a ceiling fan according to a second embodiment of the present invention will be described. Referring to the ceiling fan according to the second embodiment, a configuration of a fall preventing member formed by a wire rod is different from that of the
fall preventing member 34 according to the first embodiment. A difference between the configurations of the fall preventing members will be mainly described. In the ceiling fan according to the second embodiment, the same components as those of theceiling fan 1 according to the first embodiment have the same reference numerals and description thereof will be omitted. -
FIG. 8 is a partial enlarged view showing an attachment part of ablade 11 to asupport portion 10 in aceiling fan 51 according to the second embodiment. Moreover,FIG. 9 is a view showing an external appearance of afall preventing member 52. - As shown in
FIGS. 8 and 9 , a diameter of a wire rod for forming thefall preventing member 52 is increased so that a loop portion is deformed with difficulty in theceiling fan 51 according to the second embodiment. Thefall preventing member 52 is formed by bending a single wire rod so as to have afirst loop portion 53 and asecond loop portion 54. The first and 53 and 54 are formed into a single loop.second loop portions - The
first loop portion 53 takes a shape of a long loop in a length direction of theblade 11 and a bent portion (curved portion) 53 a obtained by curving a wire rod is provided on an end at a radial outside of theblade 11 in a longitudinal direction thereof. - The
second loop portion 54 takes a shape of an almost triangular loop and abase portion 54 a of the almost triangular shape is disposed in a width direction of theblade 11, and furthermore, atop portion 54 b opposed to the base portion is provided toward aninner edge 12 a side of aroot portion 12 of theblade 11. In thesecond loop portion 54, an opening width in the width direction of the blade 11 (a width of a loop portion surrounded by a wire rod) is gradually reduced closer to thetop portion 54 b. Moreover, thetop portion 54 b of thesecond loop portion 54 serves as a bent portion (curved portion) 54 b obtained by curving a wire rod. - A
notch portion 55 is provided on theinner edge 12 a of theroot portion 12 of theblade 11, and one of ends of the wire rod of thefall preventing member 52 is inserted in and engaged with thenotch portion 55. In theroot portion 12 of theblade 11, a throughhole 33 and thenotch portion 55 are disposed with anopening groove 31 interposed therebetween. For this reason, in a state in which thefall preventing member 52 is attached to theblade 11, a back face side (a lower face side) of theblade 11 and a wire rod are engaged in contact with each other in the throughhole 33 and thenotch portion 55. In addition, the wire rod of thesecond loop portion 54 is provided in contact with a front face side (an upper face side) of theblade 11 around asecond hole 31 b of the openinggroove 31 positioned between the throughhole 33 and thenotch portion 55. Consequently, it is possible to stably attach thefall preventing member 52 to theblade 11 by interposing the front and back faces of the blade 11 (that is, by utilizing a clip function) while elastically deforming the wire rod of thefall preventing member 52. - In a state in which the
fall preventing member 52 of theblade 11 is attached as shown inFIG. 8 , the wire rod of thefirst loop portion 53 penetrates the throughhole 33 and the wire rod penetrates an opening part at a radial outside of a slot shape. Moreover, thesecond loop portion 54 is disposed around a protrudedportion 32 and thesecond hole 31 b of the openinggroove 31. Moreover, the protrudedportion 32 is positioned in the vicinity of thebase portion 54 a of the almost triangular shape and a distance L1 is maintained between thetop portion 54 b and the protrudedportion 32 at an inside of thesecond loop portion 54. Moreover, a distance L2 is maintained as an opening length in a longitudinal direction of the throughhole 33 through which thefirst loop portion 53 penetrates. - Description will be given to a function and operation for preventing fall of the
blade 11 by thefall preventing member 52 in the case in which the attachment part of theblade 11 to thesupport portion 10 is broken, for example, theroot portion 12 of theblade 11 is broken in theceiling fan 51 according to the second embodiment. - In the case in which breakage or the like is caused on the attachment part of the
blade 11 and thesupport portion 10 during the operation of theceiling fan 51, theroot portion 12 of theblade 11 tries to be separated by centrifugal force in an outer direction (outward in a radial direction) from the receivingportion 25 of thesupport portion 10. When theblade 11 starts movement outward in the radial direction, the openinggroove 31 engaged with the protrudedportion 32 is slid with respect to the protrudedportion 32 of the receivingportion 25. On the other hand, the distance L1 is maintained between thetop portion 54 b and the protrudedportion 32 at the inside of thesecond loop portion 54. For this reason, thesecond loop portion 54 of thefall preventing member 52 will come in contact with the protrudedportion 32 so that both of them are engaged with each other only after theopening groove 31 is slid by the distance L1 with respect to the protrudedportion 32. At this time, thesecond loop portion 54 takes an almost triangular shape and has a reduced opening width as gradually closer to thetop portion 54 b. Therefore, the protrudedportion 32 and thetop portion 54 b of thesecond loop portion 54 are easily engaged with each other. - Furthermore, the
blade 11 is separated from thesupport portion 10 outward in the radial direction. Consequently, abent portion 53 a of thefirst loop portion 53 of thefall preventing member 52 is slid relatively in the longitudinal direction of the throughhole 33 taking a shape of a slot. When the sliding movement is carried out by the distance L2, thebent portion 53 a of thefirst loop portion 53 comes in contact with the end on the inside in the radial direction of theblade 11 in the throughhole 33. In this state, theinner edge 12 a of theroot portion 12 of theblade 11 is positioned on an outside in the radial direction from theouter edge 25 a of the support portion 10 (seeFIG. 10 ). In this state, thefirst loop portion 53 penetrates the throughhole 33 and thesecond loop portion 54 is engaged with the protrudedportion 32. Consequently, theblade 11 is held in thesupport portion 10 through the 53 and 54 of theloop portions fall preventing member 52 so that the fall of theblade 11 can be prevented. - In the
fall preventing member 52 according to the second embodiment, a diameter of the wire rod is increased so that the loop portion is deformed with difficulty. However, the distance L1 is maintained between thetop portion 54 b of thesecond loop portion 54 and the protrudedportion 32, and the distance L2 is maintained as the opening length in the longitudinal direction of the throughhole 33 through which thefirst loop portion 53 penetrates. A total distance of the distance L1 and the distance L2 serves as a stroke in which theblade 11 is moved to the outside in the radial direction. Thus, the stroke (that is, L1+L2) is set. Even if the wire rod of thefall preventing member 52 is not deformed, consequently, theinner edge 12 a of theroot portion 12 of theblade 11 can be positioned on the outside of theouter edge 25 a of thesupport portion 10. - In the
fall preventing member 52, abent portion 53 a is provided on thefirst loop portion 53 and theinner edge 12 a of the throughhole 33 is caused to come in contact with the wire rod in thebent portion 53 a. Consequently, it is possible to suppress stress concentration on the wire rod. Moreover, thetop portion 54 b of thesecond loop portion 54 serves as the bent portion to come in contact with the protrudedportion 32. Consequently, it is possible to suppress the stress concentration on the wire rod. - The
ceiling fan 51 according to the second embodiment is the same as theceiling fan 1 according to the first embodiment in that a user can clearly recognize a breakage of the blade in the event of the breakage at an operation time and a stop time. By using thefall preventing member 52 according to the second embodiment, it is possible to reliably hold theblade 11 with use of thefall preventing member 52 having higher rigidity in the event of the breakage of theblade 11. - Next, a ceiling fan according to a third embodiment of the present invention will be described. Referring to the ceiling fan according to the third embodiment, a configuration of a fall preventing member formed by a wire rod is different from that of the
34, 52 according to the first and second embodiments. A difference between the configurations of the fall preventing members will be mainly described. In the ceiling fan according to the third embodiment, the same components as those of thefall preventing members 1, 51 according to the first and second embodiments have the same reference numerals and description thereof will be omitted.ceiling fans -
FIG. 11 is a partial enlarged view showing an attachment part of ablade 11 to thesupport portion 10 in aceiling fan 61 according to the third embodiment. Moreover,FIG. 12 is a view showing an external appearance of afall preventing member 62 in an attached state to theblade 11, andFIG. 13 is a view showing an external appearance of thefall preventing member 62. - As shown in
FIGS. 11 through 13 , a diameter of a wire rod for forming thefall preventing member 62 is increased so that a loop portion is deformed with difficulty in theceiling fan 61 according to the third embodiment in the same manner as thefall preventing member 52 of the second embodiment. Thefall preventing member 62 is formed by bending a single wire rod so as to have afirst loop portion 63 and asecond loop portion 64. The first and 63 and 64 are formed into a single loop. Thesecond loop portions second loop portion 64 has the same configuration as thesecond loop portion 54 of thefall preventing member 52 of the second embodiment. - As shown in
FIG. 13 , thefirst loop portion 63 takes a shape of a long loop in a length direction of theblade 11 and a bent portion (curved portion) 63 a obtained by curving a wire rod is provided on an end at a radial outside of theblade 11 in a longitudinal direction thereof. Abent portion 63 b is provided on an inside end in the radial direction of theblade 11 in the loop shape of thefirst loop portion 63. Thebent portion 63 b is obtained by curving the wire rod toward a direction approximately intersecting with the radial direction (for example, the wide direction of the blade). Further, the wire rod is extending from thebent portion 63 b to a position across thesecond loop portion 64 in the wide direction of theblade 11, and at the position, abent portion 63 c obtained by curving the wire rod toward the outside end in the radial direction of theblade 11. The end of the wire rod toward the outside end in the radial direction of theblade 11 from thebent portion 63 c is an engagingportion 63 d engaging the wire rod with theblade 11. - The engaging
portion 63 d which is one of ends of the wire rod of thefall preventing member 62 is inserted in and engaged with thenotch portion 55 provided on theinner edge 12 a of theroot portion 12 of theblade 11. The engagingportion 63 d is inserted in thenotch portion 55 by inserting while elastically deforming the engagingportion 63 d which is a linear part of the wire rod so as to bring the engagingportion 63 d close to thesecond loop portion 64 in the wide direction of theblade 11. - The
blade 11 is provided with a plurality ofgroove 11 a (convex portions in the upper view and concave portions in the lower view) extending in the length direction of theblade 11 on a back face of theblade 11. Thenotch portion 55 is formed along thegroove 11 a extended in the longitudinal direction of theblade 11. Therefore, the engagingportion 63 d is inserted in thenotch portion 55 from the front face side to the back face side of theblade 11 so that the engagingportion 63 d is disposed in thegroove 11 a and engaged with an inner surface of thegroove 11 a. - The through
hole 33 having the slot shape is formed along anothergroove 11 a extended in the longitudinal direction of theblade 11. Therefore, the liner part of the wire rod (between the 63 a and 63 b) inserted in the throughbent portions hole 33 is disposed in thegroove 11 a and engaged with an inner surface of thegroove 11 a. - The engaging portion engaging with the
blade 11 in thefall preventing member 62 is disposed in and along thegroove 11 a formed in theblade 11 thereby enhancing the clip function by utilizing the elasticity of theblade 11. In addition, it is possible to suppress positional shift of thefall preventing member 62 in the wide direction of theblade 11 thereby enhancing a positional accuracy of thefall preventing member 62. - As shown in
FIGS. 11 and 12 , aseal tape 65 is attached on the front face of theblade 11 so as to extend in the wide direction of theblade 11. One end of theseal tape 65 is attached to the wire rod of thesecond loop portion 64 of thefall preventing member 62. Thereby, it is possible to prevent positional shift of thefall preventing member 62 in the longitudinal direction of theblade 11. Theseal tape 65 is attached along the front face having a plurality of convex and concave portions of thegrooves 11 a, thereby it is possible to prevent peeling off theseal tape 65. On the other hand, an external force is applied to thefall preventing member 62 so as to move thefall preventing member 62 in the longitudinal direction of theblade 11, this movement of the fall preventing member leads to break theseal tape 65. Accordingly, it is possible to make a judgment on whether thefall preventing member 62 is attached in the proper position by confirming whether theseal tape 65 does not have a break. - The
ceiling fan 61 according to the third embodiment is the same as theceiling fan 51 according to the second embodiment in that theceiling fan 61 has a function and operation for preventing fall of theblade 11 by thefall preventing member 62 in the case in which the attachment part of theblade 11 to thesupport portion 10 is broken, for example, theroot portion 12 of theblade 11 is broken in the ceiling fan 61 (refer toFIG. 14 ). Accordingly, a user can clearly recognize a breakage of the blade in the event of the breakage at an operation time and a stop time. By using thefall preventing member 62 according to the third embodiment, it is possible to attach thefall preventing member 62 to theblade 11 with enhancing a positional accuracy thereof. Furthermore, it is possible to enhance a clip function of thefall preventing member 62 thereby making it easy to attach thefall preventing member 62 to theblade 11. - In the description of the embodiments, there is taken, as an example, the case in which the
second loop portion 36 of thefall preventing member 34 is engaged with the protrudedportion 32 protruded in the vicinity of theouter edge 25 a of the receivingportion 25 in thesupport portion 10. However, the configuration of the protrudedportion 32 is not restricted to only this case. In thesupport portion 10, it is preferable to provide an engaging portion with which thesecond loop portion 36 can be engaged. It is possible to employ various structures other than the protrudedportion 32 as the configuration of the engaging portion. - Moreover, as an example, the case was described in which the through
hole 33 through which the wire rod of thefall preventing member 34 penetrates is disposed with a shift (that is, eccentricity) from the center in the width direction of theblade 11 in theroot portion 12 of theblade 11. However, the formation position of the through hole is not restricted to only this configuration. For example, it is possible to employ the case in which the through hole is disposed on the center in the width direction of theblade 11. In this case, when theblade 11 is broken, it is possible to bring the behavior of theblade 11 into an unstable state to some degree by positioning theinner edge 12 a of theroot portion 12 of theblade 11 at the outside of theouter edge 25 a of thesupport portion 10. - Although as an example, the case was described in which the fall preventing member has two loop portions, that is, the first loop portion and the second loop portion, furthermore, it is possible to employ the case in which only one loop portion is provided.
- By properly combining optional ones of the various embodiments, it is possible to produce the respective advantages.
- Although the present invention has been fully described in connection with the preferred embodiments thereof with reference to the accompanying drawings, it is to be noted that various changes and modifications are apparent to those skilled in the art. Such changes and modifications are to be understood as included within the scope of the present invention as defined by the appended claims unless they depart therefrom.
-
-
- 1 ceiling fan
- 2 suspending portion
- 3 body portion
- 4 coupling portion
- 5 joint
- 6 pipe
- 7 rotary driving portion
- 8 stator
- 9 rotor
- 10 support portion
- 11 blade
- 12 root portion
- 12 a inner edge
- 13 vane portion
- 14 step portion
- 22 body cover
- 23 fixing portion
- 24 fastening hole
- 25 receiving portion
- 25 a outer edge (outer peripheral edge)
- 26 hole (hole of receiving portion 25)
- 31 opening groove
- 31 a first hole
- 31 b second hole
- 32 protruded portion
- 32 a first flat plate portion
- 32 b second flat plate portion
- 33 through hole
- 34 fall preventing member
- 35 first loop portion
- 36 second loop portion
- 38 notch portion
- 50 ceiling
- 51 ceiling fan
- 52 fall preventing member
- 53 first loop portion
- 53 a bent portion
- 54 second loop portion
- 54 a base portion
- 54 b top portion (bent portion)
- 55 notch portion
- 61 ceiling fan
- 62 fall preventing member
Claims (9)
Applications Claiming Priority (5)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| MYPI2014702866 | 2014-09-29 | ||
| MYPI2014702866 | 2014-09-29 | ||
| MYPI2015701015A MY176596A (en) | 2014-09-29 | 2015-03-30 | Ceiling fan |
| MYPI2015701015 | 2015-03-30 | ||
| PCT/JP2015/004424 WO2016051665A1 (en) | 2014-09-29 | 2015-08-31 | Ceiling fan |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| US20170218962A1 true US20170218962A1 (en) | 2017-08-03 |
| US10316850B2 US10316850B2 (en) | 2019-06-11 |
Family
ID=55629744
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US15/514,898 Active 2036-06-01 US10316850B2 (en) | 2014-09-29 | 2015-08-31 | Ceiling fan |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US10316850B2 (en) |
| JP (1) | JP6636440B2 (en) |
| CN (1) | CN106715919B (en) |
| WO (1) | WO2016051665A1 (en) |
Cited By (10)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2019240502A1 (en) | 2018-06-12 | 2019-12-19 | 엘지전자 주식회사 | Ceiling fan and control method thereof |
| WO2019240360A1 (en) | 2018-06-12 | 2019-12-19 | 엘지전자 주식회사 | Ceiling fan and method for assembling same |
| WO2019240359A1 (en) | 2018-06-12 | 2019-12-19 | 엘지전자 주식회사 | Ceiling fan and control method therefor |
| KR20190140822A (en) | 2018-06-12 | 2019-12-20 | 엘지전자 주식회사 | Ceiling fan and assembling method thereof |
| KR20190140865A (en) | 2018-06-12 | 2019-12-20 | 엘지전자 주식회사 | Ceiling fan and controlling method thereof |
| KR20190140821A (en) | 2018-06-12 | 2019-12-20 | 엘지전자 주식회사 | Ceiling fan and controlling method thereof |
| US11168698B2 (en) * | 2018-08-27 | 2021-11-09 | Hunter Fan Company | Ceiling fan |
| US20240141916A1 (en) * | 2022-10-31 | 2024-05-02 | Hoteck Inc. | Ceiling fan and structure thereof |
| US12078183B2 (en) | 2019-09-27 | 2024-09-03 | Panasonic Intellectual Property Management Co., Ltd. | Ceiling fan |
| WO2025059303A1 (en) * | 2023-09-12 | 2025-03-20 | Delta T, Llc | Fan blade retention system for overhead fan |
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| AU2010100672B4 (en) * | 2010-06-25 | 2010-12-23 | Beacon Lighting International Limited | Ceiling fan |
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- 2015-08-31 CN CN201580052490.2A patent/CN106715919B/en active Active
- 2015-08-31 US US15/514,898 patent/US10316850B2/en active Active
- 2015-08-31 WO PCT/JP2015/004424 patent/WO2016051665A1/en not_active Ceased
- 2015-08-31 JP JP2016551489A patent/JP6636440B2/en active Active
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11873827B2 (en) | 2018-06-12 | 2024-01-16 | Lg Electronics Inc. | Ceiling fan and method for controlling the same |
| WO2019240360A1 (en) | 2018-06-12 | 2019-12-19 | 엘지전자 주식회사 | Ceiling fan and method for assembling same |
| WO2019240359A1 (en) | 2018-06-12 | 2019-12-19 | 엘지전자 주식회사 | Ceiling fan and control method therefor |
| KR20190140822A (en) | 2018-06-12 | 2019-12-20 | 엘지전자 주식회사 | Ceiling fan and assembling method thereof |
| KR20190140865A (en) | 2018-06-12 | 2019-12-20 | 엘지전자 주식회사 | Ceiling fan and controlling method thereof |
| KR20190140821A (en) | 2018-06-12 | 2019-12-20 | 엘지전자 주식회사 | Ceiling fan and controlling method thereof |
| WO2019240502A1 (en) | 2018-06-12 | 2019-12-19 | 엘지전자 주식회사 | Ceiling fan and control method thereof |
| US11506213B2 (en) | 2018-06-12 | 2022-11-22 | Lg Electronics Inc. | Ceiling fan and assembling method thereof |
| US11168698B2 (en) * | 2018-08-27 | 2021-11-09 | Hunter Fan Company | Ceiling fan |
| US12078183B2 (en) | 2019-09-27 | 2024-09-03 | Panasonic Intellectual Property Management Co., Ltd. | Ceiling fan |
| US20240141916A1 (en) * | 2022-10-31 | 2024-05-02 | Hoteck Inc. | Ceiling fan and structure thereof |
| US12345272B2 (en) * | 2022-10-31 | 2025-07-01 | Hoteck Inc. | Ceiling fan and structure thereof |
| WO2025059303A1 (en) * | 2023-09-12 | 2025-03-20 | Delta T, Llc | Fan blade retention system for overhead fan |
Also Published As
| Publication number | Publication date |
|---|---|
| JPWO2016051665A1 (en) | 2017-07-06 |
| JP6636440B2 (en) | 2020-01-29 |
| CN106715919A (en) | 2017-05-24 |
| US10316850B2 (en) | 2019-06-11 |
| CN106715919B (en) | 2019-04-30 |
| WO2016051665A1 (en) | 2016-04-07 |
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